一、 期刊论文
1.Iron-Modified Biochar Strengthens Simazine Adsorption and Decreases Simazine Decomposition in the Soil. Hongguang Cheng, Dan Xing,Shan Lin,Zhaoxia Deng,Xi Wang,Wenjing Ning, Paul W. Hill, David R. Chadwick, Davey L. Jones. Frontiers in Microbiology. 2022.13. https://doi.org/10.3389/fmicb.2022.901658
2.Dan Xing, Hongguang Cheng*, Zengping Ning, Yizhang Liu, Shan Lin, Yongfu Li, Xi Wang, Paul Hill, Dave Chadwick, Davey L. Jones. Field aging declines the regulatory effects of biochar on cadmium uptake by pepper in the soil. Journal of Environmental Management. 321 (2022) 115832 https://doi.org/10.1016/j.jenvman.2022.115832
3. Removal of Phosphate from Aqueous Solution by Zeolite-Biochar Composite: Adsorption Performance and Regulation Mechanism. Zhaoxia Deng, Shangyi Gu , Hongguang Cheng*, Dan Xing, Gratien Twagirayezu, Xi Wang, Wenjing Ning, Mingming Mao. 2020. Applied Science. 12.5334. https://doi.org/10.3390/app12115334
4. Hongguang Cheng *, Jinyang Wang, Chenglong Tu, Shan Lin, Dan Xing, Paul Hill, Dave Chadwick, Davey L. Jones. Arbuscular mycorrhizal fungi and biochar influence simazine decomposition and leaching. Global Change Biology and Bioenergy. 2021 DOI: 10.1111/gcbb.12802
5.Hongguang Cheng*, Paul W. Hill, Mohd Saufi Bastami, Davey L Jones. Biochar stimulates the decomposition of simple organicmatter and suppresses the decomposition of complex organic matter in a sandy loam soil. Global Change Biology and Bioenergy. 2017. 6: 1110–1121
6.Hongguang Cheng*, Davey L Jones, Paul W Hill, Mohd Saufi Bastami. Biochar concomitantly increases simazine sorption in sandy loamsoil and lowers its dissipation. Archives of agronomy and soil science. 2017. 8: 1082-1092
7.Hongguang Cheng*, Davey L Jones, Paul W Hill, Mohd Saufi Bastami, Chenglong Tu. Influence of biochar produced from different pyrolysis temperature on nutrient retention and leaching. Archives of Agronomy and Soil Science. 2018. 6:850-859
8.Hongguang Cheng, Xinqing Lee, Like Zhang, Bin Fang,Fang Yang, The Deviation on the Determination of Microbial Biomass Carbon in Biochar Amendment Soil with Fumigation Extraction,Journal of Agricultural Science, (9):251-255
9. 程红光,李心清,袁洪林,王兵,程建中,腕足化石古温度研究,地球科学-中国地质大学学报,2011,(04):679-686。EI 期刊论文
10. 程红光,李心清,黄思静,王兵,程建中,腕足壳体与碳酸盐岩全岩中碳、氧、锶同位素差异,沉积学报,2015,(01):60-66。 期刊论文
程红光,李心清,王克卓,黄思静,王 兵,程建中,广西 六景泥盆系腕足壳体的微量元素组成及其对海水信息的保存,矿物岩石地球化学通报,2007,(3):249-253
11. 程红光,李心清,袁洪林,王克卓,王 兵,程建中,龙门山地区早泥盆世古海洋环境—来自腕足类壳体的地球化学证据,沉积学报, 2008, (06):897-907
12. 程红光,李心清,袁洪林,王克卓,泥盆纪海水的碳、氧同位素变化—来自腕足化石的同位素记录,地球学报,2009, (1):79-88
13. 程红光,李心清,袁洪林,黄思静,王克卓,龙门山泥盆纪腕足化石锶同位素组成特征
及其古环境意义,2009,地球化学,(2):187-194
授权发明专利
程红光,邢丹,王岩,周鹏,一种测定土壤呼吸的建议装置及其测定方法,2019.4.12. 中国. ZL 2019 1 0292622.9
李心清,程红光,王兵,程建中,一种生物质碳化工艺和设备,2014.11.19 中国,ZL 2013 1 0227613.4